A CSB-PAF1C axis restores processive transcription elongation after DNA damage repair

The transcription-coupled repair pathway removes transcription-blocking DNA lesions, but how transcription is restored following DNA repair is not clear. Here the authors reveal that the PAF1 complex, while dispensable for the repair process, restores transcription after DNA damage.

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Autores principales: Diana van den Heuvel, Cornelia G. Spruijt, Román González-Prieto, Angela Kragten, Michelle T. Paulsen, Di Zhou, Haoyu Wu, Katja Apelt, Yana van der Weegen, Kevin Yang, Madelon Dijk, Lucia Daxinger, Jurgen A. Marteijn, Alfred C. O. Vertegaal, Mats Ljungman, Michiel Vermeulen, Martijn S. Luijsterburg
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/9746b9cc6bd9439f9dadbc1fe139cf31
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spelling oai:doaj.org-article:9746b9cc6bd9439f9dadbc1fe139cf312021-12-02T15:52:56ZA CSB-PAF1C axis restores processive transcription elongation after DNA damage repair10.1038/s41467-021-21520-w2041-1723https://doaj.org/article/9746b9cc6bd9439f9dadbc1fe139cf312021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21520-whttps://doaj.org/toc/2041-1723The transcription-coupled repair pathway removes transcription-blocking DNA lesions, but how transcription is restored following DNA repair is not clear. Here the authors reveal that the PAF1 complex, while dispensable for the repair process, restores transcription after DNA damage.Diana van den HeuvelCornelia G. SpruijtRomán González-PrietoAngela KragtenMichelle T. PaulsenDi ZhouHaoyu WuKatja ApeltYana van der WeegenKevin YangMadelon DijkLucia DaxingerJurgen A. MarteijnAlfred C. O. VertegaalMats LjungmanMichiel VermeulenMartijn S. LuijsterburgNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-19 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Diana van den Heuvel
Cornelia G. Spruijt
Román González-Prieto
Angela Kragten
Michelle T. Paulsen
Di Zhou
Haoyu Wu
Katja Apelt
Yana van der Weegen
Kevin Yang
Madelon Dijk
Lucia Daxinger
Jurgen A. Marteijn
Alfred C. O. Vertegaal
Mats Ljungman
Michiel Vermeulen
Martijn S. Luijsterburg
A CSB-PAF1C axis restores processive transcription elongation after DNA damage repair
description The transcription-coupled repair pathway removes transcription-blocking DNA lesions, but how transcription is restored following DNA repair is not clear. Here the authors reveal that the PAF1 complex, while dispensable for the repair process, restores transcription after DNA damage.
format article
author Diana van den Heuvel
Cornelia G. Spruijt
Román González-Prieto
Angela Kragten
Michelle T. Paulsen
Di Zhou
Haoyu Wu
Katja Apelt
Yana van der Weegen
Kevin Yang
Madelon Dijk
Lucia Daxinger
Jurgen A. Marteijn
Alfred C. O. Vertegaal
Mats Ljungman
Michiel Vermeulen
Martijn S. Luijsterburg
author_facet Diana van den Heuvel
Cornelia G. Spruijt
Román González-Prieto
Angela Kragten
Michelle T. Paulsen
Di Zhou
Haoyu Wu
Katja Apelt
Yana van der Weegen
Kevin Yang
Madelon Dijk
Lucia Daxinger
Jurgen A. Marteijn
Alfred C. O. Vertegaal
Mats Ljungman
Michiel Vermeulen
Martijn S. Luijsterburg
author_sort Diana van den Heuvel
title A CSB-PAF1C axis restores processive transcription elongation after DNA damage repair
title_short A CSB-PAF1C axis restores processive transcription elongation after DNA damage repair
title_full A CSB-PAF1C axis restores processive transcription elongation after DNA damage repair
title_fullStr A CSB-PAF1C axis restores processive transcription elongation after DNA damage repair
title_full_unstemmed A CSB-PAF1C axis restores processive transcription elongation after DNA damage repair
title_sort csb-paf1c axis restores processive transcription elongation after dna damage repair
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/9746b9cc6bd9439f9dadbc1fe139cf31
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